EP2684664A2 - Method and apparatus for manufacturing components used for the manfuacture of articles - Google Patents

Method and apparatus for manufacturing components used for the manfuacture of articles Download PDF

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Publication number
EP2684664A2
EP2684664A2 EP13187772.2A EP13187772A EP2684664A2 EP 2684664 A2 EP2684664 A2 EP 2684664A2 EP 13187772 A EP13187772 A EP 13187772A EP 2684664 A2 EP2684664 A2 EP 2684664A2
Authority
EP
European Patent Office
Prior art keywords
mold
mold insert
insert
plate
carrier
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Granted
Application number
EP13187772.2A
Other languages
German (de)
French (fr)
Other versions
EP2684664A3 (en
EP2684664B1 (en
Inventor
Anthony Dean
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Nike Innovate CV USA
Original Assignee
Nike International Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Nike International Ltd filed Critical Nike International Ltd
Priority to EP20166054.5A priority Critical patent/EP3693145B1/en
Priority to EP17169123.1A priority patent/EP3235616B1/en
Publication of EP2684664A2 publication Critical patent/EP2684664A2/en
Publication of EP2684664A3 publication Critical patent/EP2684664A3/en
Application granted granted Critical
Publication of EP2684664B1 publication Critical patent/EP2684664B1/en
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C33/00Moulds or cores; Details thereof or accessories therefor
    • B29C33/38Moulds or cores; Details thereof or accessories therefor characterised by the material or the manufacturing process
    • B29C33/3842Manufacturing moulds, e.g. shaping the mould surface by machining
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C33/00Moulds or cores; Details thereof or accessories therefor
    • B29C33/02Moulds or cores; Details thereof or accessories therefor with incorporated heating or cooling means
    • B29C33/04Moulds or cores; Details thereof or accessories therefor with incorporated heating or cooling means using liquids, gas or steam
    • B29C33/046Moulds or cores; Details thereof or accessories therefor with incorporated heating or cooling means using liquids, gas or steam using gas
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C33/00Moulds or cores; Details thereof or accessories therefor
    • B29C33/30Mounting, exchanging or centering
    • B29C33/306Exchangeable mould parts, e.g. cassette moulds, mould inserts
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C33/00Moulds or cores; Details thereof or accessories therefor
    • B29C33/38Moulds or cores; Details thereof or accessories therefor characterised by the material or the manufacturing process
    • B29C33/3835Designing moulds, e.g. using CAD-CAM
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C43/00Compression moulding, i.e. applying external pressure to flow the moulding material; Apparatus therefor
    • B29C43/02Compression moulding, i.e. applying external pressure to flow the moulding material; Apparatus therefor of articles of definite length, i.e. discrete articles
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C43/00Compression moulding, i.e. applying external pressure to flow the moulding material; Apparatus therefor
    • B29C43/32Component parts, details or accessories; Auxiliary operations
    • B29C43/52Heating or cooling
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C64/00Additive manufacturing, i.e. manufacturing of three-dimensional [3D] objects by additive deposition, additive agglomeration or additive layering, e.g. by 3D printing, stereolithography or selective laser sintering
    • B29C64/10Processes of additive manufacturing
    • B29C64/106Processes of additive manufacturing using only liquids or viscous materials, e.g. depositing a continuous bead of viscous material
    • B29C64/118Processes of additive manufacturing using only liquids or viscous materials, e.g. depositing a continuous bead of viscous material using filamentary material being melted, e.g. fused deposition modelling [FDM]
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C64/00Additive manufacturing, i.e. manufacturing of three-dimensional [3D] objects by additive deposition, additive agglomeration or additive layering, e.g. by 3D printing, stereolithography or selective laser sintering
    • B29C64/10Processes of additive manufacturing
    • B29C64/106Processes of additive manufacturing using only liquids or viscous materials, e.g. depositing a continuous bead of viscous material
    • B29C64/124Processes of additive manufacturing using only liquids or viscous materials, e.g. depositing a continuous bead of viscous material using layers of liquid which are selectively solidified
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29CSHAPING OR JOINING OF PLASTICS; SHAPING OF MATERIAL IN A PLASTIC STATE, NOT OTHERWISE PROVIDED FOR; AFTER-TREATMENT OF THE SHAPED PRODUCTS, e.g. REPAIRING
    • B29C64/00Additive manufacturing, i.e. manufacturing of three-dimensional [3D] objects by additive deposition, additive agglomeration or additive layering, e.g. by 3D printing, stereolithography or selective laser sintering
    • B29C64/10Processes of additive manufacturing
    • B29C64/141Processes of additive manufacturing using only solid materials
    • B29C64/153Processes of additive manufacturing using only solid materials using layers of powder being selectively joined, e.g. by selective laser sintering or melting
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29DPRODUCING PARTICULAR ARTICLES FROM PLASTICS OR FROM SUBSTANCES IN A PLASTIC STATE
    • B29D35/00Producing footwear
    • B29D35/12Producing parts thereof, e.g. soles, heels, uppers, by a moulding technique
    • B29D35/122Soles
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29DPRODUCING PARTICULAR ARTICLES FROM PLASTICS OR FROM SUBSTANCES IN A PLASTIC STATE
    • B29D35/00Producing footwear
    • B29D35/12Producing parts thereof, e.g. soles, heels, uppers, by a moulding technique
    • B29D35/128Moulds or apparatus therefor
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29LINDEXING SCHEME ASSOCIATED WITH SUBCLASS B29C, RELATING TO PARTICULAR ARTICLES
    • B29L2031/00Other particular articles
    • B29L2031/48Wearing apparel
    • B29L2031/50Footwear, e.g. shoes or parts thereof
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B29WORKING OF PLASTICS; WORKING OF SUBSTANCES IN A PLASTIC STATE IN GENERAL
    • B29LINDEXING SCHEME ASSOCIATED WITH SUBCLASS B29C, RELATING TO PARTICULAR ARTICLES
    • B29L2031/00Other particular articles
    • B29L2031/743Jewellery
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B33ADDITIVE MANUFACTURING TECHNOLOGY
    • B33YADDITIVE MANUFACTURING, i.e. MANUFACTURING OF THREE-DIMENSIONAL [3-D] OBJECTS BY ADDITIVE DEPOSITION, ADDITIVE AGGLOMERATION OR ADDITIVE LAYERING, e.g. BY 3-D PRINTING, STEREOLITHOGRAPHY OR SELECTIVE LASER SINTERING
    • B33Y10/00Processes of additive manufacturing
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B33ADDITIVE MANUFACTURING TECHNOLOGY
    • B33YADDITIVE MANUFACTURING, i.e. MANUFACTURING OF THREE-DIMENSIONAL [3-D] OBJECTS BY ADDITIVE DEPOSITION, ADDITIVE AGGLOMERATION OR ADDITIVE LAYERING, e.g. BY 3-D PRINTING, STEREOLITHOGRAPHY OR SELECTIVE LASER SINTERING
    • B33Y50/00Data acquisition or data processing for additive manufacturing
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B33ADDITIVE MANUFACTURING TECHNOLOGY
    • B33YADDITIVE MANUFACTURING, i.e. MANUFACTURING OF THREE-DIMENSIONAL [3-D] OBJECTS BY ADDITIVE DEPOSITION, ADDITIVE AGGLOMERATION OR ADDITIVE LAYERING, e.g. BY 3-D PRINTING, STEREOLITHOGRAPHY OR SELECTIVE LASER SINTERING
    • B33Y80/00Products made by additive manufacturing
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T29/00Metal working
    • Y10T29/49Method of mechanical manufacture
    • Y10T29/49826Assembling or joining
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T29/00Metal working
    • Y10T29/49Method of mechanical manufacture
    • Y10T29/49826Assembling or joining
    • Y10T29/49947Assembling or joining by applying separate fastener
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T29/00Metal working
    • Y10T29/49Method of mechanical manufacture
    • Y10T29/49826Assembling or joining
    • Y10T29/49947Assembling or joining by applying separate fastener
    • Y10T29/49963Threaded fastener
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T29/00Metal working
    • Y10T29/49Method of mechanical manufacture
    • Y10T29/4998Combined manufacture including applying or shaping of fluent material

Definitions

  • This invention relates generally to methods and apparatuses for the manufacture of articles. More particularly, aspects of this invention relate to methods of manufacturing molds and mold components formed using rapid prototyping technology, the molds being used to manufacture articles, including wearable articles such as footwear, including outsoles, midsoles, uppers, heel counters, watch bands, jewelry, athletic equipment, such as shin guards, hockey sticks, chest protectors, face masks, golf equipment and the like.
  • any change to the molded article design, or to the mold itself, would often require considerable time because the entire mold would need to be rebuilt.
  • a given mold can only be used for the specific design of the molded article for which it was built. This would require multiple complete molds to fabricate multiple parts or multiple designs ( e.g ., parts of different sizes, different styles, etc., all typically require a new and different mold).
  • These conventional mold arrangements are costly and generally limit the variations available within a production run of a given molded article.
  • aspects of this invention relate to methods and apparatuses for manufacturing components used for the manufacture of articles, such as wearable articles.
  • Some methods of manufacturing a mold according to aspects of this invention include: (a) forming a plate having a generally planar surface; (b) forming a second plate having at least one aperture configured to receive one or more mold inserts; and (c) forming a mold insert configured to removably connect to the second plate, wherein the mold insert is formed using a rapid prototyping technique.
  • Some rapid prototyping techniques that may be used to form the mold insert are laser sintering, fused deposition modeling, and stereolithography.
  • Some molds include, for example: (a) a plate having a generally planar surface and formed of a first material; and (b) at least a second plate having at least one aperture configured for receiving a mold insert that is formed of a second material.
  • the mold insert is formed using a rapid prototyping technique.
  • Methods for manufacturing a portion of an article of footwear include, for example: (a) forming a first plate including at least one aperture; (b) forming a mold insert using a rapid prototyping technique, the mold insert configured for removable insertion into one of the apertures of the plurality of apertures in the first plate; (c) forming a second plate; (d) inserting a moldable material into a cavity created by the mold insert; (e) molding the moldable material; and (f) removing the portion of the article of footwear from the mold.
  • the mold insert is formed from a data file created based on a scan of the body part of the user that will be wearing the molded article.
  • Figure 1 generally illustrates a perspective view of one example of a three part mold according to aspects of this invention
  • Figure 2 generally illustrates a perspective view of one example of a two-part mold according to aspects of this invention
  • Figure 3 generally illustrates one example of a mold insert formed according to methods described herein and configured to form an outsole for an article of footwear;
  • Figure 4 illustrates another example mold insert formed according to methods described herein and configured to form a watch band
  • Figure 5 includes a flowchart describing one method of manufacturing a mold according to aspects described herein;
  • Figure 6 includes a flowchart describing another method of manufacturing a mold according to additional aspects described herein;
  • Figure 7 includes a flowchart describing one method of manufacturing a portion of an article of footwear in accordance with the methods and apparatuses described herein.
  • aspects of this invention relate to methods and apparatuses for manufacturing components used in the manufacture of various wearable articles, such as footwear, watch bands, apparel, and the like. More detailed descriptions of aspects of this invention follow.
  • One aspect of this invention relates to a three part mold for manufacturing wearable articles wherein at least one portion of the mold is formed using a rapid prototyping technique.
  • Such molds may include, for example: (a) a first plate formed of a first material and including a first mold insert formed of a second material; (b) a second plate that is generally planar and is formed of the first material; and (c) a third plate arranged between the first and second plates of the mold.
  • the third plate may include a second mold insert that is formed of the second material.
  • the first and second mold inserts are removably connected to their respective plates using fasteners, such as screws, bolts, and the like.
  • the first and second mold inserts are formed using a rapid prototyping technique, such as laser sintering, fused deposition modeling, stereolithography, and the like.
  • the first and second mold inserts may be formed using a layer by layer formation process, such as the ones listed above. These processes allow the first and second mold inserts to be porous in nature.
  • the first and second mold inserts can be formed having a uniform wall thickness.
  • the mold inserts may be formed including a pattern or texture that will appear on a surface of the molded articles.
  • the first and second mold inserts may have heating or cooling elements included in the mold inserts during their formation. These heating and/or cooling elements allow for increased efficiency in the molding process.
  • the first material of which the first, second and third plates are formed is one of steel, aluminum, and the like and the plates are hingedly connected to each other.
  • the second material from which the mold inserts are formed may be nylon or glass filled nylon.
  • the mold inserts may generally be formed to withstand the temperature and pressure associated with a manufacturing or molding process. For instance, the mold inserts are formed to withstand 300-350°F temperatures and 5-20 tons of clamping tonnage that may be part of the manufacturing or molding process.
  • a two part mold for manufacturing wearable articles in accordance with this invention generally includes, for example: (a) a first plate that is generally planar and formed of a first material; and (b) a second plate including a first region that is generally planar and is formed of the first material.
  • the first region includes one or more apertures.
  • the second plate further includes a second region that includes a mold insert.
  • the mold insert is configured for engaging the aperture of the first region and is formed of a second material.
  • the mold insert is formed using a rapid prototyping technique, such as laser sintering, fused deposition modeling, stereolithography, and the like.
  • the two part mold of the previous example may be structured or built to include various aspects of the three part mold described above.
  • heating and cooling elements may be inserted into or otherwise included in the mold insert during formation of the mold insert, the mold insert may be formed to withstand the processing parameters of a given manufacturing process, etc.
  • Another aspect of this invention relates to methods of manufacturing components and apparatuses, such as molds, for use in the manufacture of wearable articles in accordance with examples of this invention.
  • Such methods may include: (a) forming a first plate from a first material; (b) forming a mold insert from a second material using a rapid prototyping technique; (c) forming a second plate including at least one aperture or cavity configured to receive the mold insert; and/or hingedly (or otherwise) engaging the second plate with the first plate.
  • the mold insert is removably connected to the second plate using fasteners, such as screws, bolts, and the like.
  • the mold insert may be formed having a uniform wall thickness.
  • the mold insert is formed using a rapid prototyping technique, such as laser sintering, fused deposition modeling, stereolithography, and the like.
  • a method of manufacturing a mold includes, for example: (a) forming a first plate having a generally planar region and an aperture configured to receive a first mold insert; (b) forming the first mold insert and removably connecting it to the first plate; (b) forming a second plate that is generally planar; (c) forming a third plate including at least one aperture configured for receiving a second mold insert; (d) forming the second mold insert and removably connecting the second mold insert to the third plate; and/or arranging the third plate between the first plate and the second plate.
  • the first, second and third plates of this example may be hingedly or otherwise connected with one another.
  • the first and second mold inserts are formed using rapid prototyping techniques, such as laser sintering, fused deposition modeling, stereolithography, and the like.
  • the steps of forming the first and second mold inserts may include forming a pattern or texture on the mold inserts that will be present on a surface of a molded article.
  • the steps of forming the first and second mold inserts may including implanting or otherwise providing heating and cooling elements in the mold inserts to improve efficiency of the process of molding the wearable articles.
  • One aspect of this invention relates to the manufacture of articles, including wearable articles, in accordance with examples of this invention.
  • One method of manufacturing wearable articles includes, for example: (a) forming a first plate having at least one aperture; (b) forming a mold insert using a rapid prototyping technique, wherein the mold insert is configured for insertion into one of the apertures of the plurality of apertures of the top plate; (c) forming a second plate having a generally planar surface; (d) inserting a moldable material into a cavity created by the mold insert; (e) molding the moldable material; and (f) removing the molded article from the cavity.
  • the steps of the molding operation may include heating and cooling the mold to form the wearable article being molded.
  • the molding operation may be one of injection molding, compression molding, vacuum molding, blow molding, and the like.
  • the mold insert may be formed from a virtual design contained in a stored data file.
  • the virtual design may be created by a designer or operator or, in some examples, the virtual design may be created based on a scan of the body part of the user that will be wearing the molded article.
  • Example apparatuses for manufacturing wearable articles include at least one plate having a plurality of apertures configured for receiving a mold insert.
  • the mold insert is formed using a rapid prototyping technique and is removably connected to the plate.
  • the apparatus also includes a second plate having a generally planar surface.
  • a third plate is also included. The third plate may also have a plurality of apertures configured for receiving a mold insert.
  • the methods of manufacturing apparatuses for manufacturing wearable articles according to this invention may include: (a) forming a first plate having at least one aperture configured to receive a mold insert; (b) forming a mold insert using a rapid prototyping technique; (c) forming a second plate; and/or (d) hingedly (or otherwise) engaging the first plate with the second plate.
  • a third plate may be formed including a plurality of apertures configured for receiving a mold insert.
  • methods of manufacturing wearable articles may include: (a) forming a first plate; (b) forming a mold insert using a rapid prototyping technique, the mold insert configured for removable connection to the first plate; (c) inserting a moldable material into a cavity created by the mold insert; and (d) performing a molding process on the mold.
  • Figure 1 generally depicts an example mold 100 that may be produced and/or used in accordance with aspects of the invention.
  • the mold 100 may be used to manufacture any number of articles, including but not limited to wearable articles such as footwear, watch bands, apparel, and the like.
  • the mold 100 of Figure 1 is generally a three part mold 100 shown in an open configuration. That is, the mold 100 includes a top plate or carrier 102, a second or bottom plate 104, and a middle plate or carrier 106.
  • the mold plates 102, 104, 106 may be formed of any suitable material, such as steel, aluminum, and the like.
  • Other mold arrangements, such as a two part mold (200 in Figure 2 ), can be produced and/or used in accordance with aspects of the invention and will be discussed further below.
  • the top plate 102 includes two recessed areas or apertures 110a, 110b arranged to accommodate a top mold insert 112.
  • the top plate 102 shown includes one top mold insert 112 inserted into the top plate aperture 110a and one aperture 110b without a top mold insert inserted.
  • the top mold insert 112 may be contained within the aperture 110a using any suitable means for maintaining the position of the top mold insert 112 on the top plate 102.
  • the top mold insert 112 is removably connected to the top plate 102 using fasteners such as bolts, screws and the like.
  • the top plate 102 also includes at least one hinge 114. The at least one hinge 114 connects the top plate 102 to the middle plate 106 in order to provide movement between the two plates 102, 106.
  • the top mold insert 112 generally includes a cavity region 120 in which at least a portion of the molded article is formed.
  • the top mold insert 112 provides a mold cavity 120 for forming the bottom surface of an outsole for an article of footwear.
  • the top mold insert 112 generally works in conjunction with a middle plate mold insert 150 to form the molded article, as will be discussed further below.
  • Features of this invention may be used to produce other articles of manufacture, including other portions of articles of footwear, such as midsoles or portions thereof, uppers or portions thereof, etc.
  • the mold 100 further includes a bottom plate 104.
  • the bottom plate 104 of this example structure includes a generally flat, planar surface.
  • the bottom plate 104 may provide a smooth surface against which the article being molded may form when the three plates 102, 104, 106 of the mold 100 are in a closed configuration.
  • the bottom plate 104 includes at least one hinge 124. The at least one hinge 124 may connect the bottom plate 104 to the middle plate 106 in order to permit movement of the bottom plate 104 relative to the middle plate 106.
  • the three part mold 100 of Figure 1 further includes middle plate 106.
  • the middle plate 106 is arranged between the top plate 102 and bottom plate 104 such that, when the mold 100 is in a closed configuration, the top plate 102 and bottom plate 104 are substantially in contact with the middle plate 106.
  • the middle plate 106 further includes a plurality of apertures 140a, 140b into which a middle plate mold insert 150 may be placed.
  • the plurality of apertures 140a, 140b may be shaped to accommodate any type of middle plate mold insert 150.
  • the apertures 140a, 140b have a generally rectangular shape.
  • the corresponding middle plate mold insert 150 includes a complimentary substantially rectangular shape. This arrangement allows the middle plate, or plate into which the mold insert will be inserted, to be formed having a standard size and shape that can be used and reused with any mold insert sized to fit within the aperture of the plate. For instance, several different articles, designs, etc. can be formed from the same mold by simply changing the mold insert. This arrangement may simplify manufacturing of the mold and may reduce production costs.
  • the middle plate mold insert 150 may be held in place using any suitable means for maintaining the mold insert 150 within the middle plate aperture 140a.
  • the middle plate mold insert 150 is removably attached to the middle plate aperture 140a using fasteners such as bolts, screws, and the like.
  • the middle plate mold insert 150 generally creates a mold cavity 151 configured for molding the side portions of the article being formed.
  • the middle plate mold insert 150 may include detailing along the inner portion 152 of the sidewalls and front and rear walls. This detailing will be used to form corresponding detailing on the side portions of the outsole for an article of footwear.
  • top mold insert 112 and middle plate mold insert 150 shown in Figure 1 will form a mold cavity configured to form a complete outsole for an article of footwear.
  • the top mold insert 112 and the middle plate mold insert 150 of Figure 1 are formed using rapid prototyping techniques.
  • the mold inserts 112, 150 may be formed using laser sintering, fused deposition modeling, stereolithography, and the like.
  • Rapid prototyping fabrication techniques involve taking virtual designs from a data file, such as Computer Aided Design (CAD) file, and automatically building the object of the design in a layer by layer process.
  • CAD Computer Aided Design
  • the fabrication equipment reads the design from the CAD file and lays down successive layers of powder, liquid or sheet material in successive layers to build the three dimensional object. The layers are joined together or fused by the fabrication equipment to join the layers together, thereby forming the three dimensional object of the design.
  • Such rapid prototyping techniques are generally known in the art.
  • One particular process form forming mold inserts that may be used in accordance with aspects described herein is laser sintering.
  • This process involves creating a virtual design in a data file, such as a CAD file.
  • the laser sintering fabrication equipment reads the CAD file and forms the three dimensional object of the design using a high powered laser to fuse powders or small particles of plastic, metal or ceramic.
  • the laser selectively fuses powdered material by scanning cross-sections generated from a CAD file or a scan of the part on the surface of a powder bed. After each cross-section is scanned, the powder bed is lowered by one layer thickness, a new layer of material is applied on top, and the process is repeated until the part is completed.
  • Laser sintering, and other rapid prototyping processes are generally known in the art.
  • One example system is found in U.S. Patent No. 5,156,697 to Bourell et al. and is incorporated herein by reference.
  • a middle plate mold insert 150 such as the one shown in Figure 1
  • an initial layer of powder of a desired material would be laid down.
  • a second layer of powder would be placed on top of the first layer.
  • the high powered laser would then use the CAD file to determine where to fuse to the two layers of powder together. For instance, the layers would be fused around the perimeter but not in the central region.
  • the powder laid out in the central region would be removed ( e . g ., after the laser sintering process is complete) and possibly reused.
  • the layering and fusing process continues until the object of the CAD file is formed.
  • a mold insert 112, 150 can be formed from a CAD file using laser sintering. Forming the mold insert may take less time than forming a conventional mold. Should changes to the mold insert 112, 150 be desired, the CAD file may be altered to implement the changes and a new mold insert 112, 150 may be formed using laser sintering in a similar time frame, In order to change the mold to produce articles with the alterations, the existing mold insert 112, 150 is removed from the corresponding plate 102, 106 and the new mold insert 112, 150 is inserted and is removably held in place using any known fastening means.
  • Articles may then be produced with the alterations.
  • the change in the article is made by changing the mold insert 112, 150, rather than retooling the entire mold, as in conventional molds.
  • there is substantial cost savings because only the mold insert 112, 150 would be changed (and new mold inserts can be produced using rapid and relatively inexpensive CAD designing and rapid prototyping technology), rather than retooling the entire mold from metal or other conventional materials.
  • using rapid prototyping techniques to form the mold inserts allows easy fabrication of modular mold inserts that can be quickly and easily altered or changed at any time during production.
  • the method described provides the ability to customize a mold. Slight changes can be made to the CAD file from which the mold inserts 112, 150 are made in relatively short time. In one example, slight changes could be made to every mold insert 112, 150 formed, thereby causing each article formed from the mold to be different, based on the mold insert used. While this is not a likely a bulk production method due to time and cost, the customization this arrangement permits would make this type of targeted customization feasible.
  • the mold insert 112, 150 may be formed from a scan of the body part intended to wear the molded article. For instance, the feet of a user may be scanned and a CAD file of the article to be formed may be created based on the scan. The CAD file created from the scan may then be used to create a mold insert 112, 150 that may be used to create a customized shoe to fit the exact characteristics of the foot of the user. Systems used for such scanning are generally known in the art. For example, U.S. Patent No. 5,880,961 to Crump describes one such method and is incorporated herein by reference.
  • Using rapid prototyping techniques, such as laser sintering, to create the mold inserts also allows for the creation of texture in the molded article without any additional processing. For example, any desired texture can be included in the mold insert when it is created, thereby eliminating the need to further process the molded article to create the desired texture, as was necessary in conventional mold arrangements.
  • mold inserts In addition, using rapid prototyping techniques, such as laser sintering to create mold inserts allows for creation of a mold that can withstand the processing requirements associated with processing or molding articles such as footwear. For instance, the mold inserts created are able to withstand processing between 300°F and 350°F. In addition, the mold inserts and molds created are able to withstand a clamping tonnage between 5 and 20 tons.
  • the mold inserts 112, 150 may be formed of any suitable material that can withstand the above-described processing parameters.
  • the mold inserts 112, 150 may be formed of nylon.
  • the mold insert is formed of glass filled nylon.
  • the mold insert is formed of aluminum filled nylon.
  • the use of rapid prototyping techniques, such as laser sintering, to create the mold inserts 112, 150 provides for the creation of a porous mold insert. That is, the layer by layer creation of the mold inserts 112, 150 may result in small air pockets within the mold insert 112, 150. In some arrangements, the mold insert 112, 150 created is between 95% and 98% solid. In still other arrangements, the mold insert created is approximately 96% solid. This porousness allows air or other fluids to escape from the mold cavity created by the mold insert when the mold is in use. Additionally or alternatively, if desired, the laser sintering or other rapid prototyping techniques can be adjusted to form small holes or channels through the mold inserts to allow for air or other fluid escape.
  • Products made using the method and apparatus described herein can be formed using any known molding process. That is, the molded insert and method of forming the mold and molded insert described herein can be used with injection molding, blow molding, vacuum molding, compression molding processes and other molding processes. In addition, these products can be formed of any suitable moldable material such as rubber, vinyl, polymers, ethylvinylacetate and phylon.
  • various heat transfer elements may be embedded within the mold inserts 112, 150 during fabrication of the mold inserts 112, 150.
  • heating elements may be implanted in the mold insert carrier and the mold insert 112, 150. The heating elements may be inserted during the laser sintering process. The heating elements allow heat to be introduced to the mold inserts 112, 150 to provide a more efficient molding process.
  • conventional molds require heat to be passed to mold cavity through the metal of the carrier plates. In the arrangement described, heat can be more directly introduced into the mold cavity to reduce the time required to heat the mold to the desired temperature.
  • cooling elements or air flow tubes may be embedded in the mold insert 112, 150 during fabrication. These cooling elements may allow additional airflow to the molded article during a cooling phase of the mold process. The additional airflow may improve the efficiency of the mold process.
  • the rapid prototyping procedure can be used to integrally form air or fluid flow channels (for heating or cooling purposes) directly in the mold insert structure.
  • thermistors (330 in Figure 3 ) may be inserted into the mold inserts 112, 150 during the laser sintering process.
  • the thermistors 330 allow the operator to monitor the heat levels in various regions within the mold inserts 112, 150. These heat levels can then be controlled to make the molding process more efficient.
  • mold inserts 112, 150 also allows for the inserts 112, 150 to be formed having a non-uniform wall thickness or a uniform wall thickness, as desired.
  • a uniform wall thickness in the mold inserts 112, 150 may allow for more even heat distribution in the mold inserts 112, 150 and throughout the molded article.
  • the uniform wall thickness will allow for more even transfer of heat from the mold carrier or plate to the mold insert and ultimately to the molded article. The more even heat distribution and heat transfer may result in a more efficient molding process.
  • the mold inserts 112, 150 can be produced having whatever wall thickness is desired ( e . g ., depending on the content of the CAD file from which the mold is produced).
  • the methods and apparatuses described above have been described in conjunction with production and use of a three part mold 100.
  • the above methods and apparatuses can also be used with a two part mold 200, as shown in Figure 2 .
  • the two part mold 200 includes a top plate 202 having a plurality of apertures 208a, 208b.
  • the apertures 208a, 208b are configured to receive a top mold insert 212.
  • the top mold insert 212 generally includes sidewall portions, front and rear portions, and a bottom portion.
  • the top mold insert 212 forms a cavity 220 in which the molded article is formed and provides a function similar to the top 112 and middle plate mold inserts 150 of the three part mold arrangement 100.
  • the top plate 202 also includes at least one hinge 214.
  • the at least one hinge 214 is connected to a bottom plate 204 to permit the top 202 and bottom plate 204 to move relative to each other.
  • the two part mold 100 also includes a bottom plate 204.
  • the bottom plate 204 may be generally rectangular and may include a generally planar surface 210 against which the article being molded is formed.
  • the bottom plate 204 may also include at least one hinge 214 connected to the top plate 202. If desired, the surface 210 of bottom plate 204 may be non-planar, textured, and/or otherwise shaped so as to provide a desired appearance to the corresponding surface of the finally molded article.
  • Figures 3 and 4 illustrate example mold inserts 300, 400 that may be used with the two part mold 200 described above.
  • Figure 3 depicts a simplified mold insert 300 for forming an outsole of an article of footwear.
  • the mold insert 300 includes two sidewall portions 302, a front 304 and rear portion 306, and a bottom portion 310.
  • the mold insert 300 forms a cavity 312 in which the outsole is formed during the molding process.
  • the mold insert 300 also includes a texture 314 that appears on the bottom portion 310 of the mold insert 300.
  • the texture shown is merely one example of a texture that may be included in the mold insert 300.
  • Figure 4 illustrates an example mold insert 400 for forming a watch band.
  • the mold insert 400 includes sidewall portions 402 for each side of the watch band, a front portion 404a, 404b for each end of the band and rear portion 406a, 406b for each end of the band.
  • the mold insert 400 further includes a bottom portion 408a, 408b for each major surface of the band that may include details or texture that will be visible on the molded article.
  • the mold insert 400 forms a cavity 412a, 412b for each part of the watch band in which the watch band is formed during the molding process.
  • Figure 5 provides a flowchart describing one example method of manufacture of a mold according to aspects described herein.
  • a first plate is formed including an aperture for holding a first mold insert.
  • a data file such as a CAD file is created wherein a three dimensional model of the first mold insert is created.
  • the first mold insert is created using a rapid prototyping technique, such as laser sintering, based on the CAD file created in step 502.
  • a second plate is formed.
  • the second plate generally includes one or more apertures into which a second mold insert may be inserted.
  • a data file such as a CAD file, is created wherein a three dimensional model of the second mold insert is created.
  • Step 510 involves creating the second mold insert based on the CAD file created in step 508.
  • the second mold insert is formed using a rapid prototyping technique, such as laser sintering.
  • the first and second mold inserts are inserted into their respective plates.
  • a third plate is created, which may include a generally planar surface against which the molded article may be formed.
  • Figure 6 provides a flowchart describing a method for forming a two part mold according to aspects described herein.
  • a first plate is formed including at least one aperture.
  • a data file such as a CAD file
  • at least one mold insert is formed from the CAD file created in step 602.
  • the mold insert may be formed using a rapid prototyping technique, such as laser sintering.
  • the mold insert is inserted into the at least one aperture of the first plate.
  • the mold insert may be removably held in the aperture using a fastener, such as bolts, screws, and the like.
  • a second plate is formed.
  • the second plate may include a generally planar surface against which the molded article can be formed.
  • the second plate is hingedly connected to the top plate forming the mold.
  • Figure 7 provides a flowchart describing a method of forming a portion of an article of footwear using one of the mold arrangements described above. For simplicity, the steps of Figure 7 are shown and described as being used with a two part mold.
  • a scan is performed of a user's feet. The scan may be performed using known methods, computer systems, and software. From the scan, a data file, such as a CAD file, is created in step 702, with a virtual design of the desired portion of the article of footwear. The virtual design created is based on the characteristics of the user's feet determined from the scan. In this example, an outsole will be formed.
  • a top mold insert is formed from the design in the CAD file.
  • the top mold insert is formed using rapid prototyping techniques, such as laser sintering. As discussed above, the top mold insert may be formed by fusing layers of powder in a layer by layer fashion until the desired mold insert is produced. Once the mold insert is formed, it is inserted into the top plate of the mold in step 706. The mold insert is removably connected to the top plate via fasteners such as screws, bolts, and the like. In step 708, the desired material is inserted into a mold cavity created by the mold insert. For example, the phylon or rubber from which the outsole will be fabricated is inserted into the mold cavity. In step 710, the mold is heated and in step 712 the mold is cooled. Once the mold is cool, the outsole formed is removed from the mold, as in step 714, and is further processed to complete fabrication of the article of footwear.
  • rapid prototyping techniques such as laser sintering.
  • the top mold insert may be formed by fusing layers of powder in a layer by layer fashion until the desired mold insert is produced.
  • mold inserts formed according to aspects described herein may be used in any desired manner with any type of mold apparatus without departing from the invention.
  • Other variations on mold configurations, types of molding processes, fabrication processes, etc., are possible without departing from the invention described herein.

Abstract

Methods and apparatuses for manufacturing components used in the manufacture of wearable articles are presented. Some of the methods of manufacturing a mold and the apparatuses themselves include, among other features, forming a plate (102) having a mold insert (112). The mold insert is removably connected to the plate and is formed using a rapid prototyping technique. In addition, methods for manufacturing wearable articles are presented. The methods generally including forming a mold (100), including a mold insert (112) formed using a rapid prototyping technique. In addition, the methods include performing the steps of a molding operation on the mold. The molding operation may include any of several known molding operations

Description

    FIELD OF THE INVENTION
  • This invention relates generally to methods and apparatuses for the manufacture of articles. More particularly, aspects of this invention relate to methods of manufacturing molds and mold components formed using rapid prototyping technology, the molds being used to manufacture articles, including wearable articles such as footwear, including outsoles, midsoles, uppers, heel counters, watch bands, jewelry, athletic equipment, such as shin guards, hockey sticks, chest protectors, face masks, golf equipment and the like.
  • BACKGROUND
  • Various molding processes exist to form a variety of molded articles. For example, injection molding, blow molding, compression molding, vacuum molding, and the like, have been used in many industries for fabrication of various molded articles. The molds and molded articles can be formed from a number of materials and in a variety of configurations. Historically, a mold has been a costly piece of manufacturing equipment and has typically been suited to fabricate a single design of the molded article. In such an arrangement, any change to the design of the molded article generally would require the creation of a new mold. This arrangement then required a costly retooling anytime a change was made to the molded article design.
  • In addition, any change to the molded article design, or to the mold itself, would often require considerable time because the entire mold would need to be rebuilt. Further still, a given mold can only be used for the specific design of the molded article for which it was built. This would require multiple complete molds to fabricate multiple parts or multiple designs (e.g., parts of different sizes, different styles, etc., all typically require a new and different mold). These conventional mold arrangements are costly and generally limit the variations available within a production run of a given molded article.
  • SUMMARY
  • The following presents a general summary of aspects of the invention in order to provide a basic understanding of the invention and various features of it. This summary is not intended to limit the scope of the invention in any way, but it simply provides a general overview and context for the more detailed description that follows.
  • Aspects of this invention relate to methods and apparatuses for manufacturing components used for the manufacture of articles, such as wearable articles. Some methods of manufacturing a mold according to aspects of this invention include: (a) forming a plate having a generally planar surface; (b) forming a second plate having at least one aperture configured to receive one or more mold inserts; and (c) forming a mold insert configured to removably connect to the second plate, wherein the mold insert is formed using a rapid prototyping technique. Some rapid prototyping techniques that may be used to form the mold insert are laser sintering, fused deposition modeling, and stereolithography.
  • Further aspects of this invention relate to molds for manufacturing various articles. Some molds include, for example: (a) a plate having a generally planar surface and formed of a first material; and (b) at least a second plate having at least one aperture configured for receiving a mold insert that is formed of a second material. The mold insert is formed using a rapid prototyping technique.
  • Additional methods described herein relate to manufacturing a wearable article according to aspects of the invention. Methods for manufacturing a portion of an article of footwear include, for example: (a) forming a first plate including at least one aperture; (b) forming a mold insert using a rapid prototyping technique, the mold insert configured for removable insertion into one of the apertures of the plurality of apertures in the first plate; (c) forming a second plate; (d) inserting a moldable material into a cavity created by the mold insert; (e) molding the moldable material; and (f) removing the portion of the article of footwear from the mold. In some arrangements, the mold insert is formed from a data file created based on a scan of the body part of the user that will be wearing the molded article.
  • BRIEF DESCRIPTION OF THE DRAWINGS
  • A more complete understanding of the present invention and certain advantages thereof may be acquired by referring to the following detailed description in consideration with the accompanying drawings, in which:
  • Figure 1 generally illustrates a perspective view of one example of a three part mold according to aspects of this invention;
  • Figure 2 generally illustrates a perspective view of one example of a two-part mold according to aspects of this invention;
  • Figure 3 generally illustrates one example of a mold insert formed according to methods described herein and configured to form an outsole for an article of footwear;
  • Figure 4 illustrates another example mold insert formed according to methods described herein and configured to form a watch band;
  • Figure 5 includes a flowchart describing one method of manufacturing a mold according to aspects described herein;
  • Figure 6 includes a flowchart describing another method of manufacturing a mold according to additional aspects described herein;
  • Figure 7 includes a flowchart describing one method of manufacturing a portion of an article of footwear in accordance with the methods and apparatuses described herein.
  • The reader is advised that the attached drawings are not necessarily drawn to scale.
  • DETAILED DESCRIPTION
  • In the following description of various example structures in accordance with the invention, reference is made to the accompanying drawings, which form a part hereof, and in which are shown by way of illustration various example methods and apparatuses for manufacturing wearable articles such as footwear, watch bands, apparel, and the like. Additionally, it is to be understood that other specific arrangements of parts and structures may be utilized, and structural and functional modifications may be made without departing from the scope of the present invention. Also, while the terms "top," "bottom," "front," "back," "rear," "side," "underside," "overhead," and the like may be used in this specification to describe various example features and elements of the invention, these terms are used herein as a matter of convenience, e.g., based on the example orientations shown in the figures and/or the orientations in typical use. Nothing in this specification should be construed as requiring a specific three dimensional or spatial orientation of structures in order to fall within the scope of this invention.
  • A. General Description of Methods and Apparatuses for Manufacturing Components Used to Manufacture Wearable Articles According to Examples of the Invention
  • In general, as described above, aspects of this invention relate to methods and apparatuses for manufacturing components used in the manufacture of various wearable articles, such as footwear, watch bands, apparel, and the like. More detailed descriptions of aspects of this invention follow.
  • 1. Example Manufacturing Components and Apparatuses According to the Invention
  • One aspect of this invention relates to a three part mold for manufacturing wearable articles wherein at least one portion of the mold is formed using a rapid prototyping technique. Such molds may include, for example: (a) a first plate formed of a first material and including a first mold insert formed of a second material; (b) a second plate that is generally planar and is formed of the first material; and (c) a third plate arranged between the first and second plates of the mold. The third plate may include a second mold insert that is formed of the second material. The first and second mold inserts are removably connected to their respective plates using fasteners, such as screws, bolts, and the like. The first and second mold inserts are formed using a rapid prototyping technique, such as laser sintering, fused deposition modeling, stereolithography, and the like.
  • The first and second mold inserts may be formed using a layer by layer formation process, such as the ones listed above. These processes allow the first and second mold inserts to be porous in nature. In addition, the first and second mold inserts can be formed having a uniform wall thickness. Further still, the mold inserts may be formed including a pattern or texture that will appear on a surface of the molded articles.
  • In some apparatuses, the first and second mold inserts may have heating or cooling elements included in the mold inserts during their formation. These heating and/or cooling elements allow for increased efficiency in the molding process.
  • In some examples, the first material of which the first, second and third plates are formed is one of steel, aluminum, and the like and the plates are hingedly connected to each other. In addition, the second material from which the mold inserts are formed may be nylon or glass filled nylon. The mold inserts may generally be formed to withstand the temperature and pressure associated with a manufacturing or molding process. For instance, the mold inserts are formed to withstand 300-350°F temperatures and 5-20 tons of clamping tonnage that may be part of the manufacturing or molding process.
  • In yet another example apparatus, a two part mold for manufacturing wearable articles in accordance with this invention generally includes, for example: (a) a first plate that is generally planar and formed of a first material; and (b) a second plate including a first region that is generally planar and is formed of the first material. The first region includes one or more apertures. The second plate further includes a second region that includes a mold insert. The mold insert is configured for engaging the aperture of the first region and is formed of a second material. The mold insert is formed using a rapid prototyping technique, such as laser sintering, fused deposition modeling, stereolithography, and the like.
  • The two part mold of the previous example may be structured or built to include various aspects of the three part mold described above. For example, heating and cooling elements may be inserted into or otherwise included in the mold insert during formation of the mold insert, the mold insert may be formed to withstand the processing parameters of a given manufacturing process, etc.
  • 2. Example Methods of Manufacturing Components and Apparatuses for Use in the Manufacture of Wearable Articles According to the Invention
  • Another aspect of this invention relates to methods of manufacturing components and apparatuses, such as molds, for use in the manufacture of wearable articles in accordance with examples of this invention. Such methods may include: (a) forming a first plate from a first material; (b) forming a mold insert from a second material using a rapid prototyping technique; (c) forming a second plate including at least one aperture or cavity configured to receive the mold insert; and/or hingedly (or otherwise) engaging the second plate with the first plate. The mold insert is removably connected to the second plate using fasteners, such as screws, bolts, and the like. The mold insert may be formed having a uniform wall thickness. In addition, the mold insert is formed using a rapid prototyping technique, such as laser sintering, fused deposition modeling, stereolithography, and the like.
  • In another example, a method of manufacturing a mold includes, for example: (a) forming a first plate having a generally planar region and an aperture configured to receive a first mold insert; (b) forming the first mold insert and removably connecting it to the first plate; (b) forming a second plate that is generally planar; (c) forming a third plate including at least one aperture configured for receiving a second mold insert; (d) forming the second mold insert and removably connecting the second mold insert to the third plate; and/or arranging the third plate between the first plate and the second plate. The first, second and third plates of this example may be hingedly or otherwise connected with one another. The first and second mold inserts are formed using rapid prototyping techniques, such as laser sintering, fused deposition modeling, stereolithography, and the like.
  • The steps of forming the first and second mold inserts may include forming a pattern or texture on the mold inserts that will be present on a surface of a molded article. In addition, the steps of forming the first and second mold inserts may including implanting or otherwise providing heating and cooling elements in the mold inserts to improve efficiency of the process of molding the wearable articles.
  • 3. Example Methods of Manufacturing Articles According to the Invention
  • Another aspect of this invention relates to the manufacture of articles, including wearable articles, in accordance with examples of this invention. One method of manufacturing wearable articles, such as a portion of an article of footwear, includes, for example: (a) forming a first plate having at least one aperture; (b) forming a mold insert using a rapid prototyping technique, wherein the mold insert is configured for insertion into one of the apertures of the plurality of apertures of the top plate; (c) forming a second plate having a generally planar surface; (d) inserting a moldable material into a cavity created by the mold insert; (e) molding the moldable material; and (f) removing the molded article from the cavity. The steps of the molding operation may include heating and cooling the mold to form the wearable article being molded. The molding operation may be one of injection molding, compression molding, vacuum molding, blow molding, and the like.
  • The method of manufacturing described above can also be used with a three part mold, as described in additional example of this invention. Additionally or alternatively, the mold insert may be formed from a virtual design contained in a stored data file. The virtual design may be created by a designer or operator or, in some examples, the virtual design may be created based on a scan of the body part of the user that will be wearing the molded article.
  • B. General Description of Methods and Apparatuses for Manufacture of Articles, Including Wearable Articles
  • Additional aspects of this invention relate to methods and apparatuses for manufacturing wearable articles, such as footwear, watch bands, apparel and the like. More detailed descriptions of these aspects of this invention follow.
  • 1. Example Apparatuses for Manufacturing Articles, Including Wearable Articles, According to the Invention
  • Example apparatuses for manufacturing wearable articles include at least one plate having a plurality of apertures configured for receiving a mold insert. The mold insert is formed using a rapid prototyping technique and is removably connected to the plate. The apparatus also includes a second plate having a generally planar surface. In some arrangements, a third plate is also included. The third plate may also have a plurality of apertures configured for receiving a mold insert.
  • 2. Example Methods of Manufacturing Apparatuses for Manufacturing Articles, Including Wearable Articles, and Methods of Manufacturing Wearable Articles According to this Aspect of the Invention
  • As noted above, the methods of manufacturing apparatuses for manufacturing wearable articles according to this invention may include: (a) forming a first plate having at least one aperture configured to receive a mold insert; (b) forming a mold insert using a rapid prototyping technique; (c) forming a second plate; and/or (d) hingedly (or otherwise) engaging the first plate with the second plate. In other example methods, a third plate may be formed including a plurality of apertures configured for receiving a mold insert.
  • Additionally or alternatively, methods of manufacturing wearable articles, as described above, may include: (a) forming a first plate; (b) forming a mold insert using a rapid prototyping technique, the mold insert configured for removable connection to the first plate; (c) inserting a moldable material into a cavity created by the mold insert; and (d) performing a molding process on the mold.
  • Specific examples of the invention are described in more detail below. The reader should understand that these specific examples are set forth merely to illustrate examples of the invention, and they should not be construed as limiting the invention.
  • C. Specific Examples of the Invention
  • Figure 1 generally depicts an example mold 100 that may be produced and/or used in accordance with aspects of the invention. The mold 100 may be used to manufacture any number of articles, including but not limited to wearable articles such as footwear, watch bands, apparel, and the like. The mold 100 of Figure 1 is generally a three part mold 100 shown in an open configuration. That is, the mold 100 includes a top plate or carrier 102, a second or bottom plate 104, and a middle plate or carrier 106. The mold plates 102, 104, 106 may be formed of any suitable material, such as steel, aluminum, and the like. Other mold arrangements, such as a two part mold (200 in Figure 2), can be produced and/or used in accordance with aspects of the invention and will be discussed further below.
  • In the arrangement shown in Figure 1, the top plate 102 includes two recessed areas or apertures 110a, 110b arranged to accommodate a top mold insert 112. The top plate 102 shown includes one top mold insert 112 inserted into the top plate aperture 110a and one aperture 110b without a top mold insert inserted. The top mold insert 112 may be contained within the aperture 110a using any suitable means for maintaining the position of the top mold insert 112 on the top plate 102. In some arrangements, the top mold insert 112 is removably connected to the top plate 102 using fasteners such as bolts, screws and the like. The top plate 102 also includes at least one hinge 114. The at least one hinge 114 connects the top plate 102 to the middle plate 106 in order to provide movement between the two plates 102, 106.
  • The top mold insert 112 generally includes a cavity region 120 in which at least a portion of the molded article is formed. In the example shown in Figure 1, the top mold insert 112 provides a mold cavity 120 for forming the bottom surface of an outsole for an article of footwear. The top mold insert 112 generally works in conjunction with a middle plate mold insert 150 to form the molded article, as will be discussed further below. Features of this invention may be used to produce other articles of manufacture, including other portions of articles of footwear, such as midsoles or portions thereof, uppers or portions thereof, etc.
  • The mold 100 further includes a bottom plate 104. The bottom plate 104 of this example structure includes a generally flat, planar surface. The bottom plate 104 may provide a smooth surface against which the article being molded may form when the three plates 102, 104, 106 of the mold 100 are in a closed configuration. In addition, the bottom plate 104 includes at least one hinge 124. The at least one hinge 124 may connect the bottom plate 104 to the middle plate 106 in order to permit movement of the bottom plate 104 relative to the middle plate 106.
  • The three part mold 100 of Figure 1 further includes middle plate 106. The middle plate 106 is arranged between the top plate 102 and bottom plate 104 such that, when the mold 100 is in a closed configuration, the top plate 102 and bottom plate 104 are substantially in contact with the middle plate 106.
  • The middle plate 106 further includes a plurality of apertures 140a, 140b into which a middle plate mold insert 150 may be placed. The plurality of apertures 140a, 140b may be shaped to accommodate any type of middle plate mold insert 150. As shown in Figure 1, the apertures 140a, 140b have a generally rectangular shape. Accordingly, the corresponding middle plate mold insert 150 includes a complimentary substantially rectangular shape. This arrangement allows the middle plate, or plate into which the mold insert will be inserted, to be formed having a standard size and shape that can be used and reused with any mold insert sized to fit within the aperture of the plate. For instance, several different articles, designs, etc. can be formed from the same mold by simply changing the mold insert. This arrangement may simplify manufacturing of the mold and may reduce production costs.
  • The middle plate mold insert 150 may be held in place using any suitable means for maintaining the mold insert 150 within the middle plate aperture 140a. In some arrangements, the middle plate mold insert 150 is removably attached to the middle plate aperture 140a using fasteners such as bolts, screws, and the like.
  • The middle plate mold insert 150 generally creates a mold cavity 151 configured for molding the side portions of the article being formed. For example, in the mold 100 of Figure 1, the middle plate mold insert 150 may include detailing along the inner portion 152 of the sidewalls and front and rear walls. This detailing will be used to form corresponding detailing on the side portions of the outsole for an article of footwear. When in a closed configuration, top mold insert 112 and middle plate mold insert 150 shown in Figure 1 will form a mold cavity configured to form a complete outsole for an article of footwear.
  • As used in accordance with aspects described herein, the top mold insert 112 and the middle plate mold insert 150 of Figure 1 are formed using rapid prototyping techniques. For example, the mold inserts 112, 150 may be formed using laser sintering, fused deposition modeling, stereolithography, and the like. Rapid prototyping fabrication techniques involve taking virtual designs from a data file, such as Computer Aided Design (CAD) file, and automatically building the object of the design in a layer by layer process. Essentially, the fabrication equipment reads the design from the CAD file and lays down successive layers of powder, liquid or sheet material in successive layers to build the three dimensional object. The layers are joined together or fused by the fabrication equipment to join the layers together, thereby forming the three dimensional object of the design. Such rapid prototyping techniques are generally known in the art.
  • One particular process form forming mold inserts that may be used in accordance with aspects described herein is laser sintering. This process involves creating a virtual design in a data file, such as a CAD file. The laser sintering fabrication equipment reads the CAD file and forms the three dimensional object of the design using a high powered laser to fuse powders or small particles of plastic, metal or ceramic. The laser selectively fuses powdered material by scanning cross-sections generated from a CAD file or a scan of the part on the surface of a powder bed. After each cross-section is scanned, the powder bed is lowered by one layer thickness, a new layer of material is applied on top, and the process is repeated until the part is completed. Laser sintering, and other rapid prototyping processes are generally known in the art. One example system is found in U.S. Patent No. 5,156,697 to Bourell et al. and is incorporated herein by reference.
  • For example, in order to create a middle plate mold insert 150, such as the one shown in Figure 1, an initial layer of powder of a desired material would be laid down. Next, a second layer of powder would be placed on top of the first layer. The high powered laser would then use the CAD file to determine where to fuse to the two layers of powder together. For instance, the layers would be fused around the perimeter but not in the central region. The powder laid out in the central region would be removed (e.g., after the laser sintering process is complete) and possibly reused. The layering and fusing process continues until the object of the CAD file is formed.
  • Using rapid prototyping techniques to form the top 112 and middle plate mold inserts 150 permits the mold inserts 112, 150 to be rapidly formed. For instance, a mold insert 112, 150 can be formed from a CAD file using laser sintering. Forming the mold insert may take less time than forming a conventional mold. Should changes to the mold insert 112, 150 be desired, the CAD file may be altered to implement the changes and a new mold insert 112, 150 may be formed using laser sintering in a similar time frame, In order to change the mold to produce articles with the alterations, the existing mold insert 112, 150 is removed from the corresponding plate 102, 106 and the new mold insert 112, 150 is inserted and is removably held in place using any known fastening means. Articles may then be produced with the alterations. The change in the article is made by changing the mold insert 112, 150, rather than retooling the entire mold, as in conventional molds. This greatly simplifies the process of making changes to a mold and/or molded article and allows running changes to be made to the manufactured article. In addition, there is substantial cost savings because only the mold insert 112, 150 would be changed (and new mold inserts can be produced using rapid and relatively inexpensive CAD designing and rapid prototyping technology), rather than retooling the entire mold from metal or other conventional materials. Essentially, using rapid prototyping techniques to form the mold inserts allows easy fabrication of modular mold inserts that can be quickly and easily altered or changed at any time during production.
  • In addition, the method described provides the ability to customize a mold. Slight changes can be made to the CAD file from which the mold inserts 112, 150 are made in relatively short time. In one example, slight changes could be made to every mold insert 112, 150 formed, thereby causing each article formed from the mold to be different, based on the mold insert used. While this is not a likely a bulk production method due to time and cost, the customization this arrangement permits would make this type of targeted customization feasible.
  • Further, the mold insert 112, 150 may be formed from a scan of the body part intended to wear the molded article. For instance, the feet of a user may be scanned and a CAD file of the article to be formed may be created based on the scan. The CAD file created from the scan may then be used to create a mold insert 112, 150 that may be used to create a customized shoe to fit the exact characteristics of the foot of the user. Systems used for such scanning are generally known in the art. For example, U.S. Patent No. 5,880,961 to Crump describes one such method and is incorporated herein by reference.
  • Using rapid prototyping techniques, such as laser sintering, to create the mold inserts also allows for the creation of texture in the molded article without any additional processing. For example, any desired texture can be included in the mold insert when it is created, thereby eliminating the need to further process the molded article to create the desired texture, as was necessary in conventional mold arrangements.
  • In addition, using rapid prototyping techniques, such as laser sintering to create mold inserts allows for creation of a mold that can withstand the processing requirements associated with processing or molding articles such as footwear. For instance, the mold inserts created are able to withstand processing between 300°F and 350°F. In addition, the mold inserts and molds created are able to withstand a clamping tonnage between 5 and 20 tons.
  • The mold inserts 112, 150 may be formed of any suitable material that can withstand the above-described processing parameters. For example, the mold inserts 112, 150 may be formed of nylon. In one particular example, the mold insert is formed of glass filled nylon. In another example, the mold insert is formed of aluminum filled nylon.
  • Further still, the use of rapid prototyping techniques, such as laser sintering, to create the mold inserts 112, 150 provides for the creation of a porous mold insert. That is, the layer by layer creation of the mold inserts 112, 150 may result in small air pockets within the mold insert 112, 150. In some arrangements, the mold insert 112, 150 created is between 95% and 98% solid. In still other arrangements, the mold insert created is approximately 96% solid. This porousness allows air or other fluids to escape from the mold cavity created by the mold insert when the mold is in use. Additionally or alternatively, if desired, the laser sintering or other rapid prototyping techniques can be adjusted to form small holes or channels through the mold inserts to allow for air or other fluid escape.
  • Products made using the method and apparatus described herein, such as articles of footwear, watch bands, apparel, and the like, can be formed using any known molding process. That is, the molded insert and method of forming the mold and molded insert described herein can be used with injection molding, blow molding, vacuum molding, compression molding processes and other molding processes. In addition, these products can be formed of any suitable moldable material such as rubber, vinyl, polymers, ethylvinylacetate and phylon.
  • In addition, various heat transfer elements (320 in Figure 3) may be embedded within the mold inserts 112, 150 during fabrication of the mold inserts 112, 150. For example, heating elements may be implanted in the mold insert carrier and the mold insert 112, 150. The heating elements may be inserted during the laser sintering process. The heating elements allow heat to be introduced to the mold inserts 112, 150 to provide a more efficient molding process. For example, conventional molds require heat to be passed to mold cavity through the metal of the carrier plates. In the arrangement described, heat can be more directly introduced into the mold cavity to reduce the time required to heat the mold to the desired temperature.
  • Additionally or alternatively, cooling elements or air flow tubes may be embedded in the mold insert 112, 150 during fabrication. These cooling elements may allow additional airflow to the molded article during a cooling phase of the mold process. The additional airflow may improve the efficiency of the mold process.
  • Rather than adding hardware elements to the mold insert, if desired, the rapid prototyping procedure can be used to integrally form air or fluid flow channels (for heating or cooling purposes) directly in the mold insert structure.
  • In addition, thermistors (330 in Figure 3) may be inserted into the mold inserts 112, 150 during the laser sintering process. The thermistors 330 allow the operator to monitor the heat levels in various regions within the mold inserts 112, 150. These heat levels can then be controlled to make the molding process more efficient.
  • Using solid deposition modeling techniques, such as laser sintering, to form mold inserts 112, 150 also allows for the inserts 112, 150 to be formed having a non-uniform wall thickness or a uniform wall thickness, as desired. For example, a uniform wall thickness in the mold inserts 112, 150 may allow for more even heat distribution in the mold inserts 112, 150 and throughout the molded article. In addition, the uniform wall thickness will allow for more even transfer of heat from the mold carrier or plate to the mold insert and ultimately to the molded article. The more even heat distribution and heat transfer may result in a more efficient molding process. However, if a non-uniform wall thickness is desired, the mold inserts 112, 150 can be produced having whatever wall thickness is desired (e.g., depending on the content of the CAD file from which the mold is produced).
  • The methods and apparatuses described above have been described in conjunction with production and use of a three part mold 100. The above methods and apparatuses can also be used with a two part mold 200, as shown in Figure 2. The two part mold 200 includes a top plate 202 having a plurality of apertures 208a, 208b. The apertures 208a, 208b are configured to receive a top mold insert 212. The top mold insert 212 generally includes sidewall portions, front and rear portions, and a bottom portion. The top mold insert 212 forms a cavity 220 in which the molded article is formed and provides a function similar to the top 112 and middle plate mold inserts 150 of the three part mold arrangement 100.
  • The top plate 202 also includes at least one hinge 214. The at least one hinge 214 is connected to a bottom plate 204 to permit the top 202 and bottom plate 204 to move relative to each other.
  • The two part mold 100 also includes a bottom plate 204. The bottom plate 204 may be generally rectangular and may include a generally planar surface 210 against which the article being molded is formed. The bottom plate 204 may also include at least one hinge 214 connected to the top plate 202. If desired, the surface 210 of bottom plate 204 may be non-planar, textured, and/or otherwise shaped so as to provide a desired appearance to the corresponding surface of the finally molded article.
  • Figures 3 and 4 illustrate example mold inserts 300, 400 that may be used with the two part mold 200 described above. Figure 3 depicts a simplified mold insert 300 for forming an outsole of an article of footwear. The mold insert 300 includes two sidewall portions 302, a front 304 and rear portion 306, and a bottom portion 310. The mold insert 300 forms a cavity 312 in which the outsole is formed during the molding process. The mold insert 300 also includes a texture 314 that appears on the bottom portion 310 of the mold insert 300. The texture shown is merely one example of a texture that may be included in the mold insert 300.
  • Figure 4 illustrates an example mold insert 400 for forming a watch band. The mold insert 400 includes sidewall portions 402 for each side of the watch band, a front portion 404a, 404b for each end of the band and rear portion 406a, 406b for each end of the band. The mold insert 400 further includes a bottom portion 408a, 408b for each major surface of the band that may include details or texture that will be visible on the molded article. The mold insert 400 forms a cavity 412a, 412b for each part of the watch band in which the watch band is formed during the molding process.
  • Figure 5 provides a flowchart describing one example method of manufacture of a mold according to aspects described herein. In step 500, a first plate is formed including an aperture for holding a first mold insert. In step 502, a data file such as a CAD file is created wherein a three dimensional model of the first mold insert is created. In step 504, the first mold insert is created using a rapid prototyping technique, such as laser sintering, based on the CAD file created in step 502. In step 506, a second plate is formed. The second plate generally includes one or more apertures into which a second mold insert may be inserted. In step 508, a data file, such as a CAD file, is created wherein a three dimensional model of the second mold insert is created. Step 510 involves creating the second mold insert based on the CAD file created in step 508. The second mold insert is formed using a rapid prototyping technique, such as laser sintering. In step 512, the first and second mold inserts are inserted into their respective plates. In step 514, a third plate is created, which may include a generally planar surface against which the molded article may be formed.
  • Figure 6 provides a flowchart describing a method for forming a two part mold according to aspects described herein. In step 600, a first plate is formed including at least one aperture. In step 602, a data file, such as a CAD file, is created wherein virtual design of the mold insert is created. In step 604, at least one mold insert is formed from the CAD file created in step 602. The mold insert may be formed using a rapid prototyping technique, such as laser sintering. In step 606, the mold insert is inserted into the at least one aperture of the first plate. The mold insert may be removably held in the aperture using a fastener, such as bolts, screws, and the like. In step 608, a second plate is formed. The second plate may include a generally planar surface against which the molded article can be formed. In step 610, the second plate is hingedly connected to the top plate forming the mold.
  • Figure 7 provides a flowchart describing a method of forming a portion of an article of footwear using one of the mold arrangements described above. For simplicity, the steps of Figure 7 are shown and described as being used with a two part mold. In step 700, a scan is performed of a user's feet. The scan may be performed using known methods, computer systems, and software. From the scan, a data file, such as a CAD file, is created in step 702, with a virtual design of the desired portion of the article of footwear. The virtual design created is based on the characteristics of the user's feet determined from the scan. In this example, an outsole will be formed. In step 704, a top mold insert is formed from the design in the CAD file. The top mold insert is formed using rapid prototyping techniques, such as laser sintering. As discussed above, the top mold insert may be formed by fusing layers of powder in a layer by layer fashion until the desired mold insert is produced. Once the mold insert is formed, it is inserted into the top plate of the mold in step 706. The mold insert is removably connected to the top plate via fasteners such as screws, bolts, and the like. In step 708, the desired material is inserted into a mold cavity created by the mold insert. For example, the phylon or rubber from which the outsole will be fabricated is inserted into the mold cavity. In step 710, the mold is heated and in step 712 the mold is cooled. Once the mold is cool, the outsole formed is removed from the mold, as in step 714, and is further processed to complete fabrication of the article of footwear.
  • The mold inserts formed according to aspects described herein may be used in any desired manner with any type of mold apparatus without departing from the invention. Other variations on mold configurations, types of molding processes, fabrication processes, etc., are possible without departing from the invention described herein.
  • CONCLUSION
  • While the invention has been described in detail in terms of specific examples including presently preferred modes of carrying out the invention, those skilled in the art will appreciate that there are numerous variations and permutations of the above described systems and methods. Thus, the spirit and scope of the invention should be construed broadly as set forth in the appended claims.
    1. 1. A method of manufacture of a mold, comprising:
      • forming a first plate from a first material;
      • forming a mold insert using a rapid prototyping technique, the mold insert being formed of a second material;
      • forming a second plate having at least one aperture, the aperture configured to receive the mold insert; and
      • engaging the first plate with the second plate.
    2. 2. The method of Clause 1, further including removably connecting the mold insert to the second plate.
    3. 3. The method of Clause 2, further including connecting the mold insert to the second plate using at least one of screws and bolts.
    4. 4. The method of Clause 1, wherein the step of forming the mold insert further includes forming the mold insert having a uniform wall thickness.
    5. 5. The method of Clause 1, wherein the first material is at least one of aluminum and steel.
    6. 6. The method of Clause 1, wherein the second material is one of nylon, aluminum filled nylon and glass filled nylon.
    7. 7. The method of Clause 1, wherein the mold insert is formed of a material able to withstand processing at 300-350°F.
    8. 8. The method of Clause 1, wherein the mold insert is formed of a material able to withstand processing at between 5 and 20 tons.
    9. 9. The method of Clause 1, wherein the rapid prototyping technique is one of laser sintering, stereolithography, and fused deposition modeling.
    10. 10. A mold, comprising:
      • a first plate, the first plate being generally planar and formed of a first material, the first plate further including a first mold insert, the first mold insert being formed of a second material;
      • a second plate, the second plate being generally planar and formed of the first material; and
      • a third plate, the third plate being located between the first plate and the second plate and including a second mold insert, the second mold insert being formed of the second material;
      • wherein the first and second mold inserts are formed using a rapid prototyping technique.
    11. 11. The mold of Clause 10, wherein the rapid prototyping technique is one of laser sintering, fused deposition modeling, and stereolithography.
    12. 12. The mold of Clause 10, wherein the first material is one of steel and aluminum.
    13. 13. The mold of Clause 10, wherein the second material is one of nylon, aluminum filled nylon and glass filled nylon.
    14. 14. The mold of Clause 10, wherein the first and second mold inserts are configured to withstand temperatures up to and including 35O°F and between 5 and 20 tons of pressure.
    15. 15. The mold of Clause 10, wherein the first and second mold inserts have a uniform wall thickness.
    16. 16. The mold of Clause 10, wherein the first mold insert is removably connected to the first plate.
    17. 17. The mold of Clause 16, wherein the first mold insert is connected to the first plate using at least one of screws and bolts.
    18. 18. The mold of Clause 10, wherein the second mold insert is removably connected to the third plate.
    19. 19. The mold of Clause 18, wherein the second mold insert is connected to the third plate using at least one of screws and bolts.
    20. 20. The mold of Clause 10, wherein the second material is porous.
    21. 21. The mold of Clause 20, wherein the second material is at least 95% solid.
    22. 22. The mold of Clause 10, wherein the first and second mold inserts include texture that will be included on an exterior surface of a molded article.
    23. 23. The mold of Clause 22, wherein the mold inserts define a portion of an article of footwear.
    24. 24. The mold of Clause 22, wherein the mold inserts define a watch band.
    25. 25. The mold of Clause 10, wherein the first and third plates are hingedly connected to each other and the second and third plates are hingedly connected to each other.
    26. 26. A method of manufacture of a mold, comprising:
      • forming a first plate, including forming a planar region and an aperture configured to receive a first mold insert;
      • forming the first mold insert and removably connecting the first mold insert to the first plate;
      • forming a second plate, the second plate being generally planar;
      • forming a third plate, including forming an aperture in the third plate configured for receiving a second mold insert, the third plate being located between the first plate and the second plate; and
      • forming the second mold insert and removably connecting the second mold insert to the third plate;
      • wherein the first and second mold inserts are formed using a rapid prototyping technique.
    27. 27. The method of Clause 26, wherein the rapid prototyping technique is one of laser sintering, stereolithography and fused deposition modeling.
    28. 28. The method of Clause 27, wherein forming the first and second mold inserts includes selectively fusing together layers of a powder material.
    29. 29. The method of Clause 28, wherein the powder material is one of nylon, aluminum filled nylon and glass filled nylon.
    30. 30. The method of Clause 26, wherein forming the first and second mold inserts includes forming a pattern to be molded onto an exterior surface of a molded article.
    31. 31. The method of Clause 26, wherein forming the first and second mold inserts includes forming a texture to be molded onto an exterior surface of a molded article.
    32. 32. The method of Clause 26, wherein forming the first and second mold inserts including forming the mold inserts having a uniform wall thickness.
    33. 33. A mold, comprising:
      • a first plate, the first plate being generally planar and formed of a first material;
      • a second plate hingedly connected to the first plate, the second plate including at least one aperture for receiving a mold insert; and
      • the mold insert formed of a second material and connected to the second plate, the mold insert being formed using a rapid prototyping technique.
    34. 34. The mold of Clause 33, wherein the rapid prototyping technique is one of laser sintering, stereolithography, and fused deposition modeling.
    35. 35. The mold of Clause 33, wherein the second material is one of nylon, aluminum filled nylon and glass filled nylon.
    36. 36. The mold of Clause 35, wherein the second material is configured to withstand temperatures between 300°F and 35O°F.
    37. 37. The mold of Clause 35, wherein the second material is configured to withstand clamping tonnage between 5 and 20 tons.
    38. 38. The mold of Clause 33, wherein the mold insert is removably connected to the second plate.
    39. 39. The mold of Clause 33, wherein the mold insert further includes heating elements embedded within the mold insert.
    40. 40. The mold of Clause 33, wherein the mold insert further includes cooling elements embedded within the mold insert.
    41. 41. A method of manufacturing a portion of an article of footwear, comprising:
      • forming a first plate, the first plate including a plurality of apertures;
      • forming a mold insert using a rapid prototyping technique, the mold insert being configured for insertion into one of the plurality of apertures of the first plate and being removably connected thereto;
      • forming a second plate, the second plate including a generally planar surface;
      • inserting a moldable material into a cavity created by the mold insert;
      • molding the moldable material in the cavity to thereby produce a portion of an article of footwear; and
      • removing the portion of the article of footwear from the mold.
    42. 42. The method of Clause 41, wherein the rapid prototyping technique is at least one of laser sintering, fused deposition modeling, and stereolithography.
    43. 43. The method of Clause 41, wherein the portion of the article of footwear formed is an outsole.
    44. 44. The method of Clause 41, wherein the moldable material is one of phylon, vinyl, polymer and rubber.
    45. 45. The method of Clause 41, wherein the molding further includes heating the mold and cooling the mold.
    46. 46. The method of Clause 41, wherein the molding is one of injection molding, compression molding, blow molding, and vacuum molding.
    47. 47. A method of manufacturing a portion of an article of footwear from a mold, comprising:
      • forming a first plate, the first plate including at least a first aperture;
      • forming a first mold insert using a rapid prototyping technique, the first mold insert being configured for insertion into the first aperture of the first plate and being removably connected thereto, wherein the first mold insert is configured for form a bottom surface of the portion of the article of footwear;
      • forming a second plate, the second plate including a generally planar surface;
      • forming a third plate, the third plate including at least second aperture and arranged between the first and second plates within the mold;
      • forming a second mold insert using a rapid prototyping technique, the second mold insert being configured for insertion into the second aperture of the third plate and being removably connected thereto, wherein the second mold insert is configured to form at least a side surface of the portion of the article of footwear;
      • inserting a moldable material into a cavity created by the first and second mold inserts;
      • molding the moldable material in the cavity to thereby produce the portion of the article of footwear; and
      • removing the portion of the article of footwear from the mold.
    48. 48. The method of Clause 47, wherein the steps of forming the first and second mold inserts using a rapid prototyping technique includes forming the first and second mold inserts using one of laser sintering, stereolithography, and fused deposition modeling.
    49. 49. The method of Clause 47, wherein the first and second mold inserts are connected to their respective plates using fasteners.
    50. 50. The method of Clause 47, wherein the step of inserting a moldable material includes inserting one of rubber, vinyl, polymer or phylon.
    51. 51. The method of Clause 47, wherein the portion of the article of footwear is an outsole.
    52. 52. The method of Clause 47, wherein the step of molding the moldable material includes heating and cooling the mold.
    53. 53. The method of Clause 47, wherein the steps of forming the first and second mold inserts includes forming the first and second mold inserts from one of nylon, aluminum filled nylon and glass filled nylon.
    54. 54. The method of Clause 47, wherein the steps of forming the first and second mold inserts includes forming a texture on the first and second mold inserts.
    55. 55. A mold for manufacture, comprising:
      • a first plate, the first plate being generally planar and formed of a first material; and
      • at least a second plate, the second plate including:
        • a first region, the first region being generally planar and formed of the first material, the first region further including at least one aperture; and
        • a mold insert, the mold insert configured for insertion into the at least one aperture and formed of a second material, the mold insert forming a mold cavity;
      • wherein the mold insert is formed using a rapid prototyping technique and wherein the mold insert further includes heat transfer elements embedded therein.
    56. 56. The mold of Clause 55, wherein the rapid prototyping technique is one of laser sintering, fused deposition modeling and stereolithography.
    57. 57. The mold of Clause 55, wherein the heat transfer elements are heating elements.
    58. 58. The mold of Clause 57, further including thermistors embedded in the mold insert.
    59. 59. The mold of Clause 55, wherein the first material is one of steel or aluminum.
    60. 60. The mold of Clause 55, wherein the second material is one of glass filled nylon and aluminum filled nylon.
    61. 61. A method of manufacturing a wearable article, comprising:
      • performing a scan of a body part of a user on which the wearable article will be worn;
      • creating a virtual design of a mold insert configured to mold the wearable article, based on the results of the scan performed;
      • saving the virtual design in a data file;
      • creating the mold insert from the saved data file, the mold insert being formed using a rapid prototyping technique;
      • inserting the mold insert into a mold; inserting moldable material into a cavity created at least in part by the mold insert; molding the moldable material to produce the wearable article; and
      • removing the wearable article from the mold.
    62. 62. The method of Clause 61, wherein the step of saving the virtual design in a data file includes saving the design in a computer aided design file.
    63. 63. The method of Clause 61, wherein the step of inserting the moldable material includes inserting one of rubber, vinyl, and phylon.
    64. 64. The method of Clause 61, wherein the step of molding the moldable mateiral includes performing a mold process associated with one of injection molding, compression molding, blow molding and vacuum molding.
    65. 65. The method of Clause 61, wherein the wearable article is an outsole of an article of footwear.
    66. 66. The method of Clause 61, wherein the wearable article is a watch band.
    67. 67. The method of Clause 61, wherein the step of forming the mold insert includes forming the mold insert using one of laser sintering, stereolithography, and fused deposition modeling.

Claims (17)

  1. A mold, comprising:
    a first mold carrier formed of a first material, the first mold carrier including a first recessed area or aperture defined therein;
    a first mold insert formed using a rapid prototyping technique, wherein the first mold insert is releasably engaged in the first recessed area or aperture of the first mold carrier;
    a second mold carrier including an opening defined therein;
    a second mold insert formed using a rapid prototyping technique, wherein the second mold insert is releasably engaged in the opening of the second mold carrier; and
    a plate,
    wherein the second mold carrier is located between the first mold carrier and the plate, and wherein the first and second mold inserts define a portion of a first mold cavity of the mold.
  2. A method of manufacture of a mold, comprising:
    forming a first mold insert using a rapid prototyping technique;
    releasably engaging the first mold insert in a first recessed area or aperture defined in a first mold carrier;
    forming a second mold insert using a rapid prototyping technique;
    releasably engaging the second mold insert in an opening defined in a second mold carrier; and
    positioning the second mold carrier between the first mold carrier and a plate in a manner such that the first and second mold inserts define a portion of a first mold cavity of the mold.
  3. The mold of claim 1 or the method of claim 2, wherein the rapid prototyping technique for forming the first mold insert is one of laser sintering, fused deposition modeling, and stereolithography.
  4. The mold of claim 1 or the method of claim 2, wherein the first mold carrier is made from steel or aluminum.
  5. The mold of claim 1 or the method of claim 2, wherein the first mold insert is made from nylon, aluminum filled nylon, or glass filled nylon.
  6. The mold of claim 1 or the method of claim 2, wherein the first and second mold inserts are configured to withstand temperatures up to and including 350°F and between 5 and 20 tons of pressure.
  7. The mold of claim 1 or the method of claim 2, wherein the first mold insert is porous.
  8. The mold of claim 1 or the method of claim 2, wherein the first mold cavity is a mold cavity for forming a portion of an article of footwear.
  9. The mold of claim 1 or the method of claim 2, wherein the first mold carrier and the second mold carrier are hingedly connected to each other and the second mold carrier and the plate are hingedly connected to each other.
  10. The mold of claim 1 or the method of claim 2, wherein the first mold carrier constitutes a plate and the second mold carrier constitutes a plate.
  11. The mold of claim 1, wherein the first mold carrier includes a second recessed area or aperture defined therein, wherein the second mold carrier includes a second opening defined therein, and wherein the mold further comprises:
    a third mold insert formed using a rapid prototyping technique, wherein the third mold insert is releasably engaged with the second recessed area or aperture of the first mold carrier; and
    a fourth mold insert formed using a rapid prototyping technique, wherein the fourth mold insert is releasably engaged with the second opening of the second mold carrier, and
    wherein the third mold insert and the fourth mold insert defined a portion of a second mold cavity of the mold.
  12. The mold of claim 1 or the method of claim 2, wherein the first mold insert includes heating elements and/or cooling elements embedded therein.
  13. The mold of claim 1 or the method of claim 2, wherein the first mold insert includes embedded thermistors therein.
  14. The mold of claim 1 or the method of claim 2, wherein the first mold insert includes holes or channels defined through it to allow air or other fluid to escape from the first mold cavity during a molding process.
  15. The mold of claim 1 or the method of claim 2, wherein the first mold insert includes air or fluid flow channels for heating or cooling the first mold insert.
  16. The mold of claim 1 or the method of claim 2, wherein the rapid prototyping technique for forming the first and second mold inserts is laser sintering.
  17. The method of claim 2, wherein the first mold carrier includes a second recessed area or aperture therein, wherein the second mold carrier includes a second opening therein, and wherein the method further comprises:
    forming a third mold insert using a rapid prototyping technique;
    forming a fourth mold insert using a rapid prototyping technique;
    releasably engaging the third mold insert with the second recessed area or aperture in the first mold carrier; and
    releasably engaging the fourth mold insert with the second opening of the second mold carrier, wherein in the positioning step, the third mold insert and the fourth mold insert are positioned so as to define a portion of a second mold cavity of the mold.
EP13187772.2A 2007-09-13 2008-09-12 Method and apparatus for manufacturing components used for the manfuacture of articles Active EP2684664B1 (en)

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EP20166054.5A EP3693145B1 (en) 2007-09-13 2008-09-12 Method and apparatus for manufacturing components used for the manufacture of articles
EP17169123.1A EP3235616B1 (en) 2007-09-13 2008-09-12 Method and apparatus for manufacturing components used for the manufacture of articles

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US11/854,830 US8245378B2 (en) 2007-09-13 2007-09-13 Method and apparatus for manufacturing components used for the manufacture of articles
EP08830938.0A EP2197644B1 (en) 2007-09-13 2008-09-12 Method and apparatus for manufacturing components used for the manufacture of articles

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EP13187773.0A Active EP2684665B1 (en) 2007-09-13 2008-09-12 Method for manufacturing a mold and mold
EP08830938.0A Active EP2197644B1 (en) 2007-09-13 2008-09-12 Method and apparatus for manufacturing components used for the manufacture of articles
EP20166054.5A Active EP3693145B1 (en) 2007-09-13 2008-09-12 Method and apparatus for manufacturing components used for the manufacture of articles
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EP08830938.0A Active EP2197644B1 (en) 2007-09-13 2008-09-12 Method and apparatus for manufacturing components used for the manufacture of articles
EP20166054.5A Active EP3693145B1 (en) 2007-09-13 2008-09-12 Method and apparatus for manufacturing components used for the manufacture of articles
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Families Citing this family (72)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US20170239864A9 (en) * 2007-03-17 2017-08-24 Joseph R. Cook Molding tools with interchangeable inserts to form a variety of parts with differing geometries from a single tool
US8245378B2 (en) 2007-09-13 2012-08-21 Nike, Inc. Method and apparatus for manufacturing components used for the manufacture of articles
US9788603B2 (en) 2007-10-23 2017-10-17 Nike, Inc. Articles and methods of manufacture of articles
US9572402B2 (en) * 2007-10-23 2017-02-21 Nike, Inc. Articles and methods of manufacturing articles
US8858856B2 (en) 2008-01-08 2014-10-14 Stratasys, Inc. Method for building and using three-dimensional objects containing embedded identification-tag inserts
JP5575374B2 (en) * 2008-03-26 2014-08-20 パナソニック株式会社 Resin injection mold
US9330406B2 (en) 2009-05-19 2016-05-03 Cobra Golf Incorporated Method and system for sales of golf equipment
US8007373B2 (en) 2009-05-19 2011-08-30 Cobra Golf, Inc. Method of making golf clubs
ES2368237B1 (en) * 2010-01-26 2012-09-14 María Del Mar Hernández Molina PROCEDURE FOR THE MANUFACTURE OF MACHINES OR MOLDS OF PARTS FOR FOOTWEAR AND DEVICE WITH TWO BRACKETS PORTA-MOLDES.
US8720036B2 (en) 2010-03-09 2014-05-13 Netbio, Inc. Unitary biochip providing sample-in to results-out processing and methods of manufacture
ES2798099T3 (en) * 2010-03-09 2020-12-09 Ande Corp Unitary biochip that provides processing from inserting samples to obtaining results and manufacturing methods
US20140178518A1 (en) * 2012-04-23 2014-06-26 Joseph R. Cook Molding tools with interchangeable inserts to form a variety of parts with differing geometries from a single tool
US9005710B2 (en) 2012-07-19 2015-04-14 Nike, Inc. Footwear assembly method with 3D printing
WO2014030068A2 (en) 2012-08-20 2014-02-27 Forever Mount, LLC A brazed joint for attachment of gemstones to each other and/or a metallic mount
CN104754971B (en) * 2012-08-28 2016-11-09 伊科斯克有限公司 The footwear parts being formed by injection mo(u)lding and related insert
US9122819B2 (en) * 2012-10-22 2015-09-01 Converse Inc. Customized shoe textures and shoe portions
DE102013002519B4 (en) 2013-02-13 2016-08-18 Adidas Ag Production method for damping elements for sportswear
WO2014141276A2 (en) * 2013-03-14 2014-09-18 Stratasys Ltd. Polymer based molds and methods of manufacturing there of
US9320316B2 (en) 2013-03-14 2016-04-26 Under Armour, Inc. 3D zonal compression shoe
DK3047964T3 (en) * 2013-09-18 2019-06-11 Desarrollo Integral Del Molde Sl shoe sole
US9375051B2 (en) 2014-01-22 2016-06-28 Nike, Inc. Article with coloring layer and control surface layer
EP3035130B1 (en) * 2014-12-19 2022-03-02 Omega SA Method for producing a decorated element of a timepiece or piece of jewellery, and element produced by the method
DE102015202013B4 (en) 2015-02-05 2019-05-09 Adidas Ag Process for producing a plastic molding, plastic molding and shoe
WO2016161187A2 (en) * 2015-03-31 2016-10-06 Zerog Oy System and method for reproducing molded insole
US10010134B2 (en) 2015-05-08 2018-07-03 Under Armour, Inc. Footwear with lattice midsole and compression insert
US10010133B2 (en) 2015-05-08 2018-07-03 Under Armour, Inc. Midsole lattice with hollow tubes for footwear
TWI659825B (en) * 2015-05-13 2019-05-21 荷蘭商耐克創新有限合夥公司 Flash-free mold assembly
EP3109033A1 (en) 2015-06-25 2016-12-28 Airbus Operations GmbH Compression mould, compression moulding tool and compression moulding method
CN106515014A (en) * 2015-09-08 2017-03-22 优克材料科技股份有限公司 Three-dimensional forming stand for manufacturing molds and manufacturing three-dimensional objects by molds
CN105538723B (en) * 2016-02-02 2017-11-10 上海联泰科技股份有限公司 Utilize the manufacturing method of shoes of 3D printing
US11324282B2 (en) 2016-05-16 2022-05-10 Adidas Ag Three-dimensionally thermo-molded footwear
US10779616B2 (en) 2016-05-16 2020-09-22 Adidas Ag Three-dimensional thermo-molding of footwear
EP3563713B1 (en) * 2016-05-16 2022-08-24 adidas AG Patterned three-dimensionallly molded footwear
US10960630B2 (en) * 2017-05-05 2021-03-30 Adidas Ag Patterned three-dimensionally molded footwear and methods of making the same
DE102016209044B4 (en) * 2016-05-24 2019-08-29 Adidas Ag Sole form for making a sole and arranging a variety of sole forms
DE102016209045B4 (en) 2016-05-24 2022-05-25 Adidas Ag METHOD AND DEVICE FOR AUTOMATICALLY MANUFACTURING SHOE SOLES, SOLES AND SHOES
DE102016209046B4 (en) 2016-05-24 2019-08-08 Adidas Ag METHOD FOR THE PRODUCTION OF A SHOE SOLE, SHOE SOLE, SHOE AND PREPARED TPU ITEMS
USD830432S1 (en) 2016-06-06 2018-10-09 Ipex Technologies Inc. 3D printed mold inserts
CN107538597A (en) * 2016-06-23 2018-01-05 优克材料科技股份有限公司 Three-dimensional printing formation unit
IT201600100775A1 (en) * 2016-10-07 2018-04-07 Memento S R L MOLD FOR CHILDREN
SE540754C2 (en) 2016-11-30 2018-10-30 Ikea Supply Ag Molding of fiber blanks into three-dimensional fiber block
DE102016223980B4 (en) 2016-12-01 2022-09-22 Adidas Ag Process for the production of a plastic molding
WO2018157146A1 (en) * 2017-02-27 2018-08-30 Voxel8, Inc. Systems and methods of 3d printing articles of footwear with property gradients
US11470908B2 (en) 2017-02-27 2022-10-18 Kornit Digital Technologies Ltd. Articles of footwear and apparel having a three-dimensionally printed feature
US11904614B2 (en) 2017-02-27 2024-02-20 Kornit Digital Technologies Ltd. Multi-input print heads for three-dimensionally printing and associated systems and methods
US11857023B2 (en) 2017-02-27 2024-01-02 Kornit Digital Technologies Ltd. Digital molding and associated articles and methods
EP3585620A4 (en) 2017-02-27 2020-12-23 Voxel8, Inc. 3d printing devices including mixing nozzles
US11701813B2 (en) 2017-02-27 2023-07-18 Kornit Digital Technologies Ltd. Methods for three-dimensionally printing and associated multi-input print heads and systems
US10194714B2 (en) 2017-03-07 2019-02-05 Adidas Ag Article of footwear with upper having stitched polymer thread pattern and methods of making the same
US10610917B2 (en) 2017-03-23 2020-04-07 Ford Motor Company 3D-printed conformal cooling for hot stamping casted die inserts
DE102017205830B4 (en) 2017-04-05 2020-09-24 Adidas Ag Process for the aftertreatment of a large number of individual expanded particles for the production of at least a part of a cast sports article, sports article and sports shoe
WO2018222477A1 (en) * 2017-06-02 2018-12-06 3M Innovative Properties Company 3d printed injection molds with cooling structures
WO2019002913A1 (en) * 2017-06-27 2019-01-03 Sabic Global Technologies B.V. Method for producing improved mold inserts and molding method
CN107364082A (en) * 2017-08-30 2017-11-21 联荣(清远)模具制造有限公司 A kind of rubber projects mould
DE102017216944B4 (en) 2017-09-25 2020-06-18 Adidas Ag 3D printed master model
CN114228215B (en) * 2017-09-25 2023-06-27 阿迪达斯股份公司 Mother pattern for 3D printing
EP3482905B1 (en) * 2017-11-14 2020-03-04 Wirthwein AG Mould and method for moulding a structural member
EP3628181B1 (en) * 2017-11-22 2021-08-25 Werkzeugbau Siegfried Hofmann GmbH Apparatus and method for manufacturing a sole
CN111465437B (en) * 2017-12-07 2022-07-22 纪念品有限公司 Kit comprising a mould for children and a powder water-sensitive mixture for the manufacture of jewelry by means of said mould
DK201870129A1 (en) * 2018-02-27 2019-10-01 Lego A/S Process for manufacturing a mold component for injection molding
US11911986B2 (en) 2018-03-02 2024-02-27 Chang Yang Material Corp. Variable pressure injection mold for plastic injection molding
CN109222331A (en) * 2018-11-02 2019-01-18 佛山市晖昀新材料科技有限公司 A kind of mold producing sole
CN109330097A (en) * 2018-11-19 2019-02-15 福建起步儿童用品有限公司 A kind of magnetic suspension shock-absorbing sole, molding die and its moulding process
US11806894B2 (en) * 2018-12-21 2023-11-07 Chromalloy Gas Turbine Llc Method and apparatus for improving core manufacturing for gas turbine components
EP3938193A1 (en) * 2019-03-13 2022-01-19 Ecco Sko A/S Footwear injection mould
US20200378124A1 (en) * 2019-06-03 2020-12-03 Brava Ip Llc Roofing Tile System And Method Of Manufacture
TWI730363B (en) * 2019-08-02 2021-06-11 寶成工業股份有限公司 Low-energy-consumption shoe-making mold device
CN111391205A (en) * 2020-03-31 2020-07-10 蔡庆忠 Sole forming die and method for manufacturing soft elastic sole by using same
JP2022090380A (en) * 2020-12-07 2022-06-17 セイコーエプソン株式会社 Method of manufacturing mold, and mold
JP2022112677A (en) * 2021-01-22 2022-08-03 セイコーエプソン株式会社 Injection molding device and molding tool for injection molding
EP4059371A1 (en) * 2021-03-16 2022-09-21 Puma Se Systems and methods for manufacturing a portion of an article of footwear from a mold
CN113183381B (en) * 2021-04-26 2022-11-08 莆田市协信制模有限公司 Synthetic rubber part forming die

Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5156697A (en) 1989-09-05 1992-10-20 Board Of Regents, The University Of Texas System Selective laser sintering of parts by compound formation of precursor powders
US5880961A (en) 1994-08-02 1999-03-09 Crump; Craig D. Appararus and method for creating three-dimensional modeling data from an object

Family Cites Families (41)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2361938A (en) * 1941-07-05 1944-11-07 Lynne D Gregg Method of making outsoles
US2428664A (en) * 1944-01-19 1947-10-07 Lynne D Gregg Apparatus for molding soles for footwear
US3871611A (en) * 1973-05-07 1975-03-18 Taketa Phyllis Mold with removable and replaceable core and cavity inserts
IT1061058B (en) * 1976-05-18 1982-10-20 Pisoni G MOLD COMPOSED IN SEVERAL PARTS OF WHICH SOME INTERCHANGEABLE USE IN THE MANUFACTURE OF SOLES HEELS WEDGES WEDGES CLOGS OR OTHER BOTTOMS WITH INSERTS OR VARIOUS LININGS OF OTHER MATERIALS FOR MALE OR FEMALE FOOTWEAR
US4245406A (en) * 1979-05-03 1981-01-20 Brookfield Athletic Shoe Company, Inc. Athletic shoe
FR2572324B4 (en) * 1983-10-07 1986-12-26 Moulages Maixentais Sarl SHOE SOLE, PROCESS AND TOOL FOR ITS MANUFACTURE.
JPS62268504A (en) * 1986-05-16 1987-11-21 セイコーインスツルメンツ株式会社 Wristwatch band
US5141680A (en) 1988-04-18 1992-08-25 3D Systems, Inc. Thermal stereolighography
US5204055A (en) * 1989-12-08 1993-04-20 Massachusetts Institute Of Technology Three-dimensional printing techniques
GB9008703D0 (en) 1990-04-18 1990-06-13 Alcan Int Ltd Spray deposition of metals
US5990268A (en) 1992-11-23 1999-11-23 Dtm Corporation Sinterable semi-crystalline powder and near-fully dense article formed therewith
US5718863A (en) 1992-11-30 1998-02-17 Lockheed Idaho Technologies Company Spray forming process for producing molds, dies and related tooling
CN2155700Y (en) * 1993-05-10 1994-02-16 诚洲股份有限公司 Shoe sole moulding die
US5458825A (en) * 1993-08-12 1995-10-17 Hoover Universal, Inc. Utilization of blow molding tooling manufactured by sterolithography for rapid container prototyping
US5872714A (en) 1993-11-26 1999-02-16 Ford Global Technologies, Inc. Rapidly making a contoured part
FR2733176B1 (en) * 1995-04-19 1997-06-27 Sidel Sa DEVICE FOR MANUFACTURING CONTAINERS IN THERMOPLASTIC MATERIAL BY BLOWING OR STRETCH-BLOWING
US5515903A (en) * 1995-06-19 1996-05-14 Multi-Products, Incorporated Method of making a mold
US6270335B2 (en) 1995-09-27 2001-08-07 3D Systems, Inc. Selective deposition modeling method and apparatus for forming three-dimensional objects and supports
US5714098A (en) * 1995-12-20 1998-02-03 Nike, Inc. Footwear fitting method
US5641448A (en) * 1996-03-11 1997-06-24 National Research Council Of Canada Method of producing plastic injection molds for prototype parts
CN1060698C (en) * 1996-04-26 2001-01-17 清华大学 Multifunctional equipment capable of fast completing various model making technique
US5746952A (en) * 1996-08-19 1998-05-05 Professional Footcare International, Inc. Method of making injection molded orthotics
US5578227A (en) * 1996-11-22 1996-11-26 Rabinovich; Joshua E. Rapid prototyping system
DE19704700C1 (en) * 1997-02-07 1998-09-24 Fraunhofer Ges Forschung Defined, delicate and punctually temperable molds and tools made of different materials, in particular metal, plastic, paper, ceramics and their mixtures, their use and processes for tempering molds and tools
US6070107A (en) 1997-04-02 2000-05-30 Stratasys, Inc. Water soluble rapid prototyping support and mold material
US6116888A (en) * 1998-07-29 2000-09-12 Owens-Brockway Plastic Products Inc. Prototype mold for blow-molding hollow plastic containers and method of making same
CA2304978C (en) * 2000-04-13 2008-02-12 Giuceppe Milioto Limb extremity positioning device and measurement method
WO2001082829A2 (en) * 2000-05-03 2001-11-08 Flock Stephen T Prosthesis and method of making
DE10025804A1 (en) 2000-05-20 2001-11-22 Detlef Kochan Universal mold formed from three dimensional CAD data by rapid prototyping, and reproducing e.g. sculpture faithfully, is designed for variety of plastic molding processes
US20030009919A1 (en) * 2000-07-20 2003-01-16 E.S. Originals, Inc. Process for making a shoe outsole
US20020187065A1 (en) * 2001-06-06 2002-12-12 Amaya Herman Ernesto Method for the rapid fabrication of mold inserts
GB2378151A (en) 2001-07-31 2003-02-05 Dtm Corp Fabricating a three-dimensional article from powder
US6836699B2 (en) * 2001-12-27 2004-12-28 The Protomold Company, Inc. Automated quoting of molds and molded parts
US7058439B2 (en) * 2002-05-03 2006-06-06 Contourmed, Inc. Methods of forming prostheses
US20050035498A1 (en) * 2003-08-13 2005-02-17 Stevens Randal Alan Methods of making a negative hearing aid mold
CN1581174A (en) * 2003-08-15 2005-02-16 烟台泰利汽车技术有限公司 Novel mould-making technology
JP2008504159A (en) * 2004-06-28 2008-02-14 ザ エクス ワン カンパニー Gas permeable mold
US20060097422A1 (en) * 2004-11-08 2006-05-11 Diamond Andrew J Method for performing surgery and appliances produced thereby
US20070193068A1 (en) * 2006-02-22 2007-08-23 Calvano Michael A Footwear mold assembly with removable plate and method of manufacturing footwear
US7520741B2 (en) * 2006-07-21 2009-04-21 Acushnet Company Replaceable mold cavities
US8245378B2 (en) 2007-09-13 2012-08-21 Nike, Inc. Method and apparatus for manufacturing components used for the manufacture of articles

Patent Citations (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5156697A (en) 1989-09-05 1992-10-20 Board Of Regents, The University Of Texas System Selective laser sintering of parts by compound formation of precursor powders
US5880961A (en) 1994-08-02 1999-03-09 Crump; Craig D. Appararus and method for creating three-dimensional modeling data from an object

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EP2684663B1 (en) 2016-09-07
EP2684665A2 (en) 2014-01-15
WO2009036240A1 (en) 2009-03-19
EP3693145A1 (en) 2020-08-12
CN201371529Y (en) 2009-12-30
US20090072436A1 (en) 2009-03-19
EP2684663A3 (en) 2014-08-20
EP3693145B1 (en) 2022-02-23
EP2684664A3 (en) 2015-04-01
EP2684665B1 (en) 2017-05-03
EP3235616A1 (en) 2017-10-25
CN101456225B (en) 2012-08-08
US9089999B2 (en) 2015-07-28
EP2197644A1 (en) 2010-06-23
EP3235616B1 (en) 2020-04-01
US20120306125A1 (en) 2012-12-06
EP2684663A2 (en) 2014-01-15
EP2684664B1 (en) 2017-05-03
US20150336298A1 (en) 2015-11-26
CN101456225A (en) 2009-06-17
CN102756443A (en) 2012-10-31
EP2197644B1 (en) 2014-03-05
US8245378B2 (en) 2012-08-21
CN102756443B (en) 2015-08-19
EP2684665A3 (en) 2015-11-25

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